Mechanical Engineering

Postgraduate
K.Y.Lee-6@sms.ed.ac.uk
3.008 Engineering Forum
Mechanical Engineering
Energy Systems
Postgraduate
T.J.J.Huckstep@sms.ed.ac.uk
2.2017 James Clerk Maxwell Building
Mechanical Engineering
Multiscale Thermofluids
Senior Lecturer in Hydrogen Energy Systems
prodip.das@ed.ac.uk
3.023 Engineering Forum
Mechanical Engineering
Energy Systems
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Dr Prodip Das

Editorships Associate Editor in Electrochemical Engineering, Frontiers in Chemical Engineering (2022–date) Associate Editor, Journal of Electrochemical Energy Conversion and Storage (2021–date) Associate Editor in Fuel Cells, Electrolyzers and Membrane Reactors, Frontiers in Energy Research (2020–date)

Guest Editor for the special issue: Multiphysics, Multiphase, and Multiscale Modeling and Characterization of Porous Media in Electrochemical Energy Systems, Frontiers in Energy Research (2023) Lead Guest Editor for the special issue: Battery Management in Electric Vehicles: Current Status and Future Trends, Batteries (2022–2023) Lead Guest Editor of a special issue on Advanced Energy Materials and Research, Energies (2020–2021)

Editorial Board Member for section Battery Performance, Ageing, Reliability and Safety, Batteries (2022–date) Editorial Board Member of Renewable and Sustainable Energy (2022–date) Editorial Board Member for section D1: Advanced Energy Materials, Energies (2019–2023) Editorial Board Member for section Inventions and Innovation in Energy and Thermal/Fluidic Science, Inventions (2018–date)

Advisory Board Member, Challenges, MDPI (2020–date)

  • Thermodynamics 4
  • Professional Issues for Mechanical Engineers 3
  • Sustainable Energy Systems Dissertation
  • Mechanical Engineering Project 4
Research Associate
g.cerniauskas@ed.ac.uk
1.131 Sanderson Building
Mechanical Engineering
Materials and Processes
Research Associate in Offshore Renewables
v1kgratt@ed.ac.uk
3.008 Engineering Forum
Mechanical Engineering
Energy Systems
Chair of Extreme Conditions Engineering
K.Kamenev@ed.ac.uk
+44(0)131 6517232
3802 Erskine Williamson Building
Mechanical Engineering
Materials and Processes
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Professor Konstantin Kamenev
Research Associate
sgrainge@ed.ac.uk
2.2017 James Clerk Maxwell Building
Mechanical Engineering
Bioengineering
Reader and Deputy Head of Research Institute
Dongmin.Yang@ed.ac.uk
+44(0)131 6505644
1.142 Sanderson Building
Mechanical Engineering
Materials and Processes
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Dr Dongmin Yang

Dr Yang's current research interests focus on Composites Engineering (materials, manufacturing and structures) and Computational Engineering (multiscale, multiphysics, multiphase coupling). With a background in manufacturing and later experience in structural and materials engineering, his cross-disciplinary research is at the interfaces of underpinning material science, emerging manufacturing technologies and advanced structural analysis and design. He also develops computational techniques and deterministic models to address multiscale, multiphysics and multiphase coupling challenges across engineering disciplines.

Google Scholar Researchgate

  • BEng in Mechanical Engineering, 2004.
  • MSc in Mechanical Engineering, 2007.
  • PhD in Civil Engineering, Leeds (with ORSAS scholarship), 2011.

CEng, FIMechE, FHEA

I welcome talented PhD candidates, postdoctoral fellows and academic/industrial visitors from various engineering disciplines to work on composites engineering and computational engineering.

There are various scholarship opportunities at Edinburgh, click the links below for more details:

CSC-Edinburgh scholarship

Principal's Career Development PhD Scholarships​

Edinburgh Global Research Scholarship

University of Edinburgh scholarships

Centre for Doctoral Training (CDT) scholarships

Edinburgh Centre for Robotics

 

 

 

Senior Lecturer
Andy.Downes@ed.ac.uk
+44(0)131 6505660
2.2010 James Clerk Maxwell Building
Mechanical Engineering
Bioengineering
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[photo of Andy Downes]

‪Andrew Downes‬ - ‪Google Scholar‬

Andrew studied at the University of Cambridge and was awarded a degree in Natural Sciences (Physics) in 1992. He continued in Cambridge for his PhD on nano-optical microscopy which was awarded in 1996. He remained in Cambridge as a Postdoc on the analysis of metallic nanowires until 1998, when he moved to Marseille to continue work on nano-optical microscopy and spectroscopy. He returned to Cambridge in 2001 to set up a nano-optical microscope, and in 2003-4 was at UCL working on nano-optical lithography.

In 2005 he moved to Edinburgh to work on nano-optical Raman microscopy. In 2006 he set up a Coherent anti-Stokes microscope for biological samples, and in 2007 was awarded an RCUK fellowship which converted into a lectureship in 2012. Research expanded to Raman spectroscopy, Atomic Force Microscopy mechanical measurements, and high-speed Raman imaging of biological samples. A common theme has been novel measurements, and pushing the limits of detection. In 2020 he was promoted to senior lecturer.

A recent focus has been the use of Raman spectroscopy in cancer and neurodegenerative diseases, investigating living cells and tissues and applying to accurate diagnosis.

PhD (Department of Engineering, University of Cambridge, 1996).

Senior Fellow of the Higher Education Academy (SFHEA) since 2017.

  • Raman spectroscopy for analysis of biological materials, and disease diagnosis
  • High-speed Raman (CARS, SRS) microscopy
  • Equipment development for Raman spectroscopy and microscopy
  • Nano-scale (tip-enhanced) Raman spectroscopy and microscopy
Emeritus Professor
Mark.Linne@ed.ac.uk
Mechanical Engineering
Multiscale Thermofluids
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Prof Mark Linne

Mark Linne is an experimentalist who has worked in reacting flow-fields (sprays, combustion and fuel cells) and advanced flow-field measurement techniques (laser and x-ray based) since earning a PhD in Mechanical Engineering at Stanford University. He has worked as a laser development scientist at Spectra-Physics Inc. where he developed the first commercially available diode-pumped solid state lasers (now an ubiquitous technology, for which he was awarded 2 patents). He was a professor at the Colorado School of Mines (in the US), The University of Lund (in Sweden), Chalmers University (in Sweden) and now the University of Edinburgh. Throught his career Linne has been active in the development of fiberoptic-based absorptipn/fluorescence probes; short-pulse degenerate four-wave mixing (DFWM) and pump/probe absorption spectroscopy; novel gated-integration and phase sensitive detection imaging techniques; early particle image velocimetry and cavity-enhanced absorption techniques; time-gated ballistic imaging for sprays; and x-ray photoelectron spectroscopy for interfacial electrochemistry. Linne is currently working on short pulse coherent anti-Stokes Raman spectroscopy (CARS) in collaboration with Sandia Labs, and on novel approaches to thermodynamic state changes (trans-critical) in liquid/gas systems (e.g. fuel sprays). He has also served as a manager of Combustion Chemistry at Sandia National Labs' Combustion Research Facility and he was the Director of the Combustion Engine Research Center at Chalmers University. Linne is now the Chair of Combustion Engines in Edinburgh with the task to lead the development of a new lab that focuses on novel internal combustion engines for hybrid vehicles, as range extenders for electric cars, for heavy-duty Diesel engines, and marine engines. The lab has a specialty in direct-injected engines and so it also focuses on spray physics. A new Small Research Facility is under development. Linne is also the Head of the new Institute for Multiscale Thermofluids.

  • Course organizer for MECE09034 Thermofluids 3, a 20 credit class combining fluid mechanics (taught by Dr. Matthew Borg) and heat transfer (taught by Prof. Linne).